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Deformation by grain boundary hinge-like behavior

机译:晶界类似铰链的变形

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A symmetric tilt ∑11 (113) Cu grain boundary was investigated through molecular dynamics simulation. The boundary exhibited an unexpected nonlinear elastic response upon compressive loading normal to the grain boundary plane. Analysis revealed that this particular grain boundary can act as a hinge, leading to significant rotation between two crystals. The rotation induces a change in the loading direction and a subsequent decrease in strain energy due to elastic anisotropy. The geometry, anisotropy, and atomic structure of the boundary were all found to play a role in its peculiar behavior.
机译:通过分子动力学模拟研究了对称倾斜的∑11(113)Cu晶界。该边界在垂直于晶界平面的压缩载荷下表现出出乎意料的非线性弹性响应。分析表明,这种特定的晶界可以充当铰链,从而导致两个晶体之间发生明显的旋转。旋转引起加载方向的变化,并由于弹性各向异性而导致应变能的下降。发现边界的几何形状,各向异性和原子结构都在其特殊行为中起作用。

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